bibtype C - Conference Paper (international conference)
ARLID 0475649
utime 20240111140941.7
mtime 20170626235959.9
SCOPUS 85033395937
WOS 000416378300068
DOI 10.22616/ERDev2017.16.N091
title (primary) (eng) Summer Ventilation of Poultry House for Chicken Fattening in CFD Modeling
specification
page_count 6 s.
media_type P
serial
ARLID cav_un_epca*0475648
ISSN 1691-5976
title 16th International Scientific Conference ENGINEERING FOR RURAL DEVELOPMENT Proceedings
part_num Volume 16
page_num 461-466
publisher
place Jelgava
name Latvia University of Agriculture
year 2017
editor
name1 Aboltins
name2 Aivars
keyword brojler
keyword Fluent
keyword temperature
keyword ventilation
author (primary)
ARLID cav_un_auth*0347234
share 33
name1 Cao
name2 V. D.
country CZ
author
ARLID cav_un_auth*0259551
name1 Kic
name2 P.
country CZ
author
ARLID cav_un_auth*0237467
full_dept (cz) Výpočetní Středisko
full_dept Computer Centre
department (cz) VS
department VS
full_dept Department of Image Processing
share 33
name1 Zajíček
name2 Milan
institution UTIA-B
country CZ
fullinstit Ústav teorie informace a automatizace AV ČR, v. v. i.
source
source_type pdf
url http://library.utia.cas.cz/separaty/2017/VS/zajicek-0475649.pdf
source_size 398 kB
cas_special
abstract (eng) The aim of this paper is a numerical analysis of ventilation of the buildings for broiler during summer. Ventilation is the most important operation for internal environment to achieve the best performance of chickens. At each stage of growth of the chicken exists optimum performance zone, in which the chickens use the most of the energy from food for growth. The target temperature for best performance of broilers during growth changes daily and therefore ventilation is necessary to be modified by suitable method. During the fattening period the biological production and thermoregulatory ability of chickens change significantly. In summer at the end of the fattening period, the problem of making the internal environment is more significant. The fundamental problem will be solved by using mathematical simulation, and speed of flow will be determined in the ventilated space. For the research of the airflow, prediction of the expected speed and air temperatures were used CFD (computer fluid dynamics) software Fluent. The effects of the change geometry and outside temperature, concentration of carbon oxides, ammonia and dust within the hall were also monitored. Examined results of the program Fluent in all variations of temperatures and geometry for the location of the ventilation systems will be compared and then the effects and aftermath within the climatic conditions will be evaluated.
action
ARLID cav_un_auth*0347235
name ENGINEERING FOR RURAL DEVELOPMENT
dates 20170524
mrcbC20-s 20170526
place Jelgava
country LV
RIV GB
FORD0 20000
FORD1 20100
FORD2 20102
reportyear 2018
num_of_auth 3
presentation_type PR
inst_support RVO:67985556
permalink http://hdl.handle.net/11104/0272348
cooperation
ARLID cav_un_auth*0347236
name Česká zemědělská universita
institution ČZU
country CZ
confidential S
mrcbC86 n.a. Proceedings Paper Engineering Multidisciplinary
mrcbC86 n.a. Proceedings Paper Engineering Multidisciplinary
mrcbC86 n.a. Proceedings Paper Engineering Multidisciplinary
arlyear 2017
mrcbU14 85033395937 SCOPUS
mrcbU24 PUBMED
mrcbU34 000416378300068 WOS
mrcbU56 pdf 398 kB
mrcbU63 cav_un_epca*0475648 16th International Scientific Conference ENGINEERING FOR RURAL DEVELOPMENT Proceedings Volume 16 1691-5976 461 466 16th International Scientific Conference ENGINEERING FOR RURAL DEVELOPMENT Proceedings Jelgava Latvia University of Agriculture 2017 Volume 16
mrcbU67 340 Aboltins Aivars